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January 14, 2026Medicina0 citationsOpen Access

GLP-1 Receptor Agonist Exenatide Protects Against Doxorubicin-Induced Cardiotoxicity Through the SIRT1 Pathway: An Electrocardiographic, 99mTc-PYP Scintigraphic, and Biochemical Study

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MSMusa SalmanogluGEGulcin ErcanHGHanife Seyda Genc

Key Points

  • To assess exenatide's cardioprotective effect against doxorubicin-induced myocardial injury in rats.
  • Randomized study with 28 male Wistar albino rats divided into four groups.
  • Groups included control, exenatide alone, doxorubicin treatment, and combined treatment with exenatide and doxorubicin.
  • Evaluated ECG, scintigraphy, and biochemical parameters post-treatment.
  • Doxorubicin caused significant ECG abnormalities and increased myocardial radiotracer uptake.
  • Exenatide co-treatment improved ECG changes and attenuated cardiac and inflammatory biomarkers.
  • Biochemical analysis showed reduced oxidative stress and restoration of antioxidant defenses.

Abstract

Background and Objectives: This study was designed to evaluate the potential cardioprotective effect of Exenatide against doxorubicin (DOX)-induced myocardial injury in rats by assessing scintigraphic alterations together with oxidative stress and inflammation. Materials and Methods: This study included 28 adult male Wistar albino rats that were randomized to 4 groups (n = 7): control, Exenatide alone, DOX (receiving DOX (18 mg/kg, i.p) on days 5–7; Exenatide + DOX (treated with Exenatide together with the DOX). On day 8, ECG, 99mTc-PYP scintigraphy, and biochemical parameters were evaluated. Results: DOX caused ECG abnormalities—bradycardia, significant QT prolongation, and elevated ST-segment amplitude—along with increased myocardial PYP uptake. Exenatide + DOX group significantly improved ECG changes. Biochemically, DOX markedly increased cardiac injury biomarkers (cTnT, CK, CK-MB), hepatic and renal injury markers (ALT, AST, LDH, BUN, creatinine), SIRT-1 level, inflammatory marker (NF-κB, TNF-α, IL-6, NO) and oxidative stress indicators (MDA, TOS), while decreasing antioxidant defenses (GSH, TAS, Nrf2). Exenatide co-treatment significantly attenuated all DOX-induced changes. Conclusions: Exenatide markedly attenuates DOX-induced cardiotoxicity by improving electrical conduction, reducing myocardial radiotracer uptake, and restoring oxidative–inflammatory balance through partial recovery of the SIRT-1/Nrf2/NF-κB pathway.

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Cite This Study

Salmanoglu et al. (2026) studied this question.

synapsesocial.com/papers/6966e70e13bf7a6f02bff522https://doi.org/10.3390/medicina62010143
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